论文标题

观察两个阈值,导致2D混合钙钛矿中极化的缩合

Observation of two thresholds leading to polariton condensation in 2D hybrid perovskites

论文作者

Polimeno, Laura, Fieramosca, Antonio, Lerario, Giovanni, Cinquino, Marco, De Giorgi, Milena, Ballarini, Dario, Todisco, Francesco, Dominici, Lorenzo, Ardizzone, Vincenzo, Pugliese, Marco, Prontera, Carmela T., Maiorano, Vincenzo, Gigli, Giuseppe, De Marco, Luisa, Sanvitto, Daniele

论文摘要

鉴于其出色的非线性光学特性,易于制造和多功能性,二维(2D)钙钛矿是光子应用的有希望的材料。特别是,利用其高振荡器强度,2D钙钛矿的结晶形式可以用作光学微腔内的激子培养基,从而可以研究其在较强的轻度耦合方面中其光学性质。虽然在室温下在不同材料中观察到了极化浓缩,但在这里,我们首次观察到2D钙钛矿中的两个不同的阈值过程,这种材料从未显示出迄今为止的自发相变。特别是,我们证明了来自双脱核状态的激光,该状态有助于填充下极的下部分支,并且在较高的激发能力下,最终导致了偏振子冷凝物的形成。排放线宽变窄和在50 x 50 UM2区域的空间连贯性是吸烟枪,是2D混合钙钛矿中量子相干状态的形成。我们的结果不仅表明了2D钙钛矿中偏振子冷凝物的形成,而且对于理解物理机制也至关重要,这导致基于钙钛矿的北极星微腔中相干相变。

Two dimensional (2D) perovskites are promising materials for photonic applications, given their outstanding nonlinear optical properties, ease of fabrication and versatility. In particular, exploiting their high oscillator strength, the crystalline form of 2D perovskites can be used as excitonic medium in optical microcavities, allowing for the study of their optical properties in the strong light-matter coupling regime. While polariton condensation has been observed in different materials at room temperature, here we observe for the first time two distinct threshold processes in a 2D perovskite, a material that has never shown spontaneous phase transition up to now. In particular, we demonstrate lasing from the bi-exciton state which contributes to populate the lower polariton branch and, at higher excitation powers, eventually leads to the formation of a polariton condensate. The emission linewidth narrowing and a spatial coherence over 50 x 50 um2 area are the smoking gun, the formation of a quantum coherent state in 2D hybrid perovskite. Our results not only show the formation of a polariton condensate in 2D perovskites but they are also crucial for the understanding of the physical mechanisms that leads to coherent phase transition in perovskite-based polariton microcavities.

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